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Here, we validate a novel protocol, Bulk RNA Barcoding and sequencing (BRB-seq), that combines the multiplexing-driven cost-effectiveness of a single-cell RNA-seq protocol with the efficiency of a bulk RNA-seq procedure. For this we use BRB-seq protocol on human pre-adipocytes and differentiated adi...
ORGANISM(S): Homo sapiens 
Here, we validate a novel protocol, Bulk RNA Barcoding and sequencing (BRB-seq), that combines the multiplexing-driven cost-effectiveness of a single-cell RNA-seq protocol with the efficiency of a bulk RNA-seq procedure. For this we use BRB-seq protocol on 60 human LCL data from the 1000G project sa...
ORGANISM(S): Homo sapiens 
Here, we validate a novel protocol, Bulk RNA Barcoding and sequencing (BRB-seq), that combines the multiplexing-driven cost-effectiveness of a single-cell RNA-seq protocol with the efficiency of a bulk RNA-seq procedure. For this we first gauge the applicability of the SCRB-seq protocol on bulk DMSO...
ORGANISM(S): Homo sapiens 
NAD+ is a crucial cofactor for the activity of various enzymes, including sirtuins and ADP-ribosyl transferases, and its decline is associated with aging and metabolic-related diseases. Therefore, a strong interest has been raised in the therapeutic use of NAD+ precursors (Vitamin B3s), but many suf...
ORGANISM(S): Mus musculus 
NAD+ is a crucial cofactor for the activity of various enzymes, including sirtuins and ADP-ribosyl transferases, and its decline is associated with aging and metabolic-related diseases. Therefore, a strong interest has been raised in the therapeutic use of NAD+ precursors (Vitamin B3s), but many suf...
ORGANISM(S): Mus musculus 
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